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342 lines
12 KiB
C
342 lines
12 KiB
C
/**
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* @file lv_vdraw.c
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*
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*/
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#include "lv_conf.h"
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#if LV_VDB_SIZE != 0
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#include <stddef.h>
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#include "lvgl/lv_obj/lv_vdb.h"
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/*********************
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* INCLUDES
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*********************/
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/*********************
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* DEFINES
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*********************/
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/**********************
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* TYPEDEFS
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**********************/
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/**********************
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* STATIC PROTOTYPES
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**********************/
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/**********************
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* STATIC VARIABLES
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**********************/
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/**********************
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* MACROS
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**********************/
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/**********************
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* GLOBAL FUNCTIONS
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**********************/
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/**
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* Fill an area in the Virtual Display Buffer
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* @param cords_p coordinates of the area to fill
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* @param mask_p fill only o this mask
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* @param color fill color
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* @param opa opacity of the area (0..255)
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*/
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void lv_vfill(const area_t * cords_p, const area_t * mask_p,
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color_t color, opa_t opa)
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{
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area_t res_a;
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bool union_ok;
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lv_vdb_t * vdb_p = lv_vdb_get();
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/*Get the union of cord and mask*/
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/* The mask is already truncated to the vdb size
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* in 'lv_refr_area_with_vdb' function */
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union_ok = area_union(&res_a, cords_p, mask_p);
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/*If there are common part of the three area then draw to the vdb*/
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if(union_ok == true) {
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area_t vdb_rel_a; /*Stores relative coordinates on vdb*/
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vdb_rel_a.x1 = res_a.x1 - vdb_p->vdb_area.x1;
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vdb_rel_a.y1 = res_a.y1 - vdb_p->vdb_area.y1;
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vdb_rel_a.x2 = res_a.x2 - vdb_p->vdb_area.x1;
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vdb_rel_a.y2 = res_a.y2 - vdb_p->vdb_area.y1;
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color_t * vdb_buf_tmp = vdb_p->buf;
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uint32_t vdb_width = area_get_width(&vdb_p->vdb_area);
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/*Move the vdb_tmp to the first row*/
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vdb_buf_tmp += vdb_width * vdb_rel_a.y1;
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/*Set all row in vdb to the given color*/
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cord_t row;
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uint32_t col;
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/*Run simpler function without opacity*/
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if(opa == OPA_COVER) {
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for(row = vdb_rel_a.y1; row <= vdb_rel_a.y2; row++) {
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for(col = vdb_rel_a.x1; col <= vdb_rel_a.x2; col++) {
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vdb_buf_tmp[col] = color;
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}
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vdb_buf_tmp += vdb_width;
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}
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}
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/*Calculate the alpha too*/
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else {
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for(row = vdb_rel_a.y1; row <= vdb_rel_a.y2; row++) {
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for(col = vdb_rel_a.x1; col <= vdb_rel_a.x2; col++) {
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color_t c = color_mix(color, vdb_buf_tmp[col], opa);
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vdb_buf_tmp[col] = c;
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}
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vdb_buf_tmp += vdb_width;
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}
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}
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}
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}
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/**
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* Draw a letter in the Virtual Display Buffer
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* @param pos_p left-top coordinate of the latter
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* @param mask_p the letter will be drawn only on this area
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* @param font_p pointer to font
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* @param letter a letter to draw
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* @param color color of letter
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* @param opa opacity of letter (0..255)
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*/
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void lv_vletter(const point_t * pos_p, const area_t * mask_p,
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const font_t * font_p, uint8_t letter,
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color_t color, opa_t opa)
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{
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if(font_p == NULL) return;
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uint8_t letter_w = font_get_width(font_p, letter);
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uint8_t letter_h = font_get_height(font_p);
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const uint8_t * map_p = font_get_bitmap(font_p, letter);
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if(map_p == NULL) return;
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/*If the letter is completely out of mask don't draw it */
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if(pos_p->x + letter_w < mask_p->x1 || pos_p->x > mask_p->x2 ||
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pos_p->y + letter_h < mask_p->y1 || pos_p->y > mask_p->y2) return;
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lv_vdb_t * vdb_p = lv_vdb_get();
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cord_t vdb_width = area_get_width(&vdb_p->vdb_area);
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color_t * vdb_buf_tmp = vdb_p->buf;
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cord_t col, row;
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uint8_t col_bit;
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uint8_t col_byte_cnt;
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cord_t col_start = pos_p->x > mask_p->x1 ? 0 : mask_p->x1 - pos_p->x;
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cord_t col_end = pos_p->x + letter_w < mask_p->x2 ? letter_w : mask_p->x2 - pos_p->x + 1;
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cord_t row_start = pos_p->y > mask_p->y1 ? 0 : mask_p->y1 - pos_p->y;
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cord_t row_end = pos_p->y + letter_h < mask_p->y2 ? letter_h : mask_p->y2 - pos_p->y + 1;
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/*Set a pointer on VDB to the first pixel of the letter*/
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vdb_buf_tmp += ((pos_p->y - vdb_p->vdb_area.y1) * vdb_width)
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+ pos_p->x - vdb_p->vdb_area.x1;
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/*If the letter is partially out of mask the move there on VDB*/
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vdb_buf_tmp += (row_start * vdb_width) + col_start;
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/*Move on the map too*/
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map_p += (row_start * font_p->width_byte) + (col_start>>3);
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for(row = row_start; row < row_end; row ++) {
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col_byte_cnt = 0;
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col_bit = 7 - (col_start % 8);
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for(col = col_start; col < col_end; col ++) {
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if((*map_p & (1 << col_bit)) != 0) {
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if(opa == OPA_COVER) *vdb_buf_tmp = color;
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else *vdb_buf_tmp = color_mix(color, *vdb_buf_tmp, opa);
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}
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vdb_buf_tmp++;
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/*Use a col. more times depending on LV_UPSCALE_FONT*/
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if(col_bit != 0) col_bit --;
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else {
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col_bit = 7;
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col_byte_cnt ++;
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map_p ++;
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}
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}
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map_p += font_p->width_byte - col_byte_cnt;
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vdb_buf_tmp += vdb_width - (col_end - col_start); /*Next row in VDB*/
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}
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}
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/**
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* Draw a color map to the display
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* @param cords_p coordinates the color map
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* @param mask_p the map will drawn only on this area
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* @param map_p pointer to a color_t array
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* @param opa opacity of the map (ignored, only for compatibility with lv_vmap)
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* @param transp true: enable transparency of LV_IMG_COLOR_TRANSP color pixels
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* @param upscale true: upscale to double size
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* @param recolor mix the pixels with this color
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* @param recolor_opa the intense of recoloring
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*/
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void lv_vmap(const area_t * cords_p, const area_t * mask_p,
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const color_t * map_p, opa_t opa, bool transp, bool upscale,
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color_t recolor, opa_t recolor_opa)
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{
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area_t masked_a;
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bool union_ok;
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lv_vdb_t * vdb_p = lv_vdb_get();
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/*Get the union of map size and mask*/
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/* The mask is already truncated to the vdb size
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* in 'lv_refr_area_with_vdb' function */
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union_ok = area_union(&masked_a, cords_p, mask_p);
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/*If there are common part of the three area then draw to the vdb*/
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if(union_ok == false) return;
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uint8_t ds_shift = 0;
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if(upscale != false) ds_shift = 1;
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/*If the map starts OUT of the masked area then calc. the first pixel*/
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cord_t map_width = area_get_width(cords_p) >> ds_shift;
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if(cords_p->y1 < masked_a.y1) {
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map_p += (uint32_t) map_width * ((masked_a.y1 - cords_p->y1) >> ds_shift);
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}
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if(cords_p->x1 < masked_a.x1) {
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map_p += (masked_a.x1 - cords_p->x1) >> ds_shift;
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}
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/*Stores coordinates relative to the act vdb*/
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masked_a.x1 = masked_a.x1 - vdb_p->vdb_area.x1;
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masked_a.y1 = masked_a.y1 - vdb_p->vdb_area.y1;
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masked_a.x2 = masked_a.x2 - vdb_p->vdb_area.x1;
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masked_a.y2 = masked_a.y2 - vdb_p->vdb_area.y1;
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cord_t vdb_width = area_get_width(&vdb_p->vdb_area);
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color_t * vdb_buf_tmp = vdb_p->buf;
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vdb_buf_tmp += (uint32_t) vdb_width * masked_a.y1; /*Move to the first row*/
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map_p -= (masked_a.x1 >> ds_shift);
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if(upscale != false) {
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cord_t row;
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cord_t col;
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color_t transp_color = LV_COLOR_TRANSP;
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color_t color_tmp;
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color_t prev_color = COLOR_BLACK;
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cord_t map_col;
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color_tmp = color_mix(recolor, prev_color, recolor_opa);
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for(row = masked_a.y1; row <= masked_a.y2; row++) {
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for(col = masked_a.x1; col <= masked_a.x2; col ++) {
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map_col = col >> 1;
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if(map_p[map_col].full != prev_color.full) {
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prev_color.full = map_p[map_col].full;
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color_tmp = color_mix(recolor, prev_color, recolor_opa);
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}
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if(transp == false || map_p[map_col].full != transp_color.full) {
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vdb_buf_tmp[col] = color_mix( color_tmp, vdb_buf_tmp[col], opa);
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}
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}
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if((row & 0x1) != 0) map_p += map_width; /*Next row on the map*/
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vdb_buf_tmp += vdb_width ; /*Next row on the VDB*/
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}
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}
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else {
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if(transp == false) { /*Simply copy the pixels to the VDB*/
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cord_t row;
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if(opa == OPA_COVER) { /*no opa */
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for(row = masked_a.y1; row <= masked_a.y2; row++) {
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memcpy(&vdb_buf_tmp[masked_a.x1],
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&map_p[masked_a.x1],
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area_get_width(&masked_a) * sizeof(color_t));
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map_p += map_width; /*Next row on the map*/
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vdb_buf_tmp += vdb_width; /*Next row on the VDB*/
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}
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} else {
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cord_t col;
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for(row = masked_a.y1; row <= masked_a.y2; row++) {
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for(col = masked_a.x1; col <= masked_a.x2; col ++) {
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vdb_buf_tmp[col] = color_mix( map_p[col], vdb_buf_tmp[col], opa);
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}
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map_p += map_width; /*Next row on the map*/
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vdb_buf_tmp += vdb_width; /*Next row on the VDB*/
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}
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}
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/*To recolor draw simply a rectangle above the image*/
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#if LV_VDB_SIZE != 0
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lv_vfill(cords_p, mask_p, recolor, recolor_opa);
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#endif
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} else { /*transp == true: Check all pixels */
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cord_t row;
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cord_t col;
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color_t transp_color = LV_COLOR_TRANSP;
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if(recolor_opa == OPA_TRANSP) {/*No recolor*/
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if(opa == OPA_COVER) { /*no opa */
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for(row = masked_a.y1; row <= masked_a.y2; row++) {
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for(col = masked_a.x1; col <= masked_a.x2; col ++) {
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if(map_p[col].full != transp_color.full) {
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vdb_buf_tmp[col] = map_p[col];
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}
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}
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map_p += map_width; /*Next row on the map*/
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vdb_buf_tmp += vdb_width; /*Next row on the VDB*/
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}
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} else {
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for(row = masked_a.y1; row <= masked_a.y2; row++) {
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for(col = masked_a.x1; col <= masked_a.x2; col ++) {
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if(map_p[col].full != transp_color.full) {
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vdb_buf_tmp[col] = color_mix( map_p[col], vdb_buf_tmp[col], opa);
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}
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}
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map_p += map_width; /*Next row on the map*/
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vdb_buf_tmp += vdb_width; /*Next row on the VDB*/
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}
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}
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} else { /*Recolor needed*/
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color_t color_tmp;
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if(opa == OPA_COVER) { /*no opa */
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for(row = masked_a.y1; row <= masked_a.y2; row++) {
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for(col = masked_a.x1; col <= masked_a.x2; col ++) {
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if(map_p[col].full != transp_color.full) {
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color_tmp = color_mix(recolor, map_p[col], recolor_opa);
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vdb_buf_tmp[col] = color_tmp;
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}
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}
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map_p += map_width; /*Next row on the map*/
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vdb_buf_tmp += vdb_width; /*Next row on the VDB*/
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}
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} else {
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for(row = masked_a.y1; row <= masked_a.y2; row++) {
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for(col = masked_a.x1; col <= masked_a.x2; col ++) {
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if(map_p[col].full != transp_color.full) {
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color_tmp = color_mix(recolor, map_p[col], recolor_opa);
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vdb_buf_tmp[col] = color_mix(color_tmp, vdb_buf_tmp[col], opa);
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}
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}
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map_p += map_width; /*Next row on the map*/
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vdb_buf_tmp += vdb_width; /*Next row on the VDB*/
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}
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}
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}
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}
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}
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}
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/**********************
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* STATIC FUNCTIONS
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**********************/
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#endif
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